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Erschienen in: Child's Nervous System 10/2014

01.10.2014 | Original Paper

Differential vulnerability of white matter structures to experimental infantile hydrocephalus detected by diffusion tensor imaging

verfasst von: Ramin Eskandari, Osama Abdullah, Cameron Mason, Kelley E. Lloyd, Amanda N. Oeschle, James P. McAllister II

Erschienen in: Child's Nervous System | Ausgabe 10/2014

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Abstract

Purpose

The differential vulnerability of white matter (WM) to acute and chronic infantile hydrocephalus and the related effects of early and late reservoir treatment are unknown, but diffusion tensor imaging (DTI) could provide this information. Thus, we characterized WM integrity using DTI in a clinically relevant model.

Methods

Obstructive hydrocephalus was induced in 2-week-old felines by intracisternal kaolin injection. Ventricular reservoirs were placed 1 (early) or 2 (late) weeks post-kaolin and tapped frequently based solely on neurological deficit. Hydrocephalic and age-matched control animals were sacrificed 12 weeks postreservoir. WM integrity was evaluated in the optic system, corpus callosum, and internal capsule prereservoir and every 3 weeks using DTI. Analyses were grouped as acute (<6 weeks) or chronic (≥6 weeks).

Results

In the corpus callosum during acute stages, fractional anisotropy (FA) decreased significantly with early and late reservoir placement (p = 0.0008 and 0.0008, respectively), and diffusivity increased significantly in early (axial, radial, and mean diffusivity, p = 0.0026, 0.0012, and 0.0002, respectively) and late (radial and mean diffusivity, p = 0.01 and 0.0038, respectively) groups. Chronically, the corpus callosum was thinned and not detectable by DTI. FA was significantly lower in the optic chiasm and tracts (p = 0.0496 and 0.0052, respectively) with late but not early reservoir placement. In the internal capsule, FA in both reservoir groups increased significantly with age (p < 0.05) but diffusivity remained unchanged.

Conclusions

All hydrocephalic animals treated with intermittent ventricular reservoir tapping demonstrated progressive ventriculomegaly. Both reservoir groups demonstrated WM integrity loss, with the CC the most vulnerable and the optic system the most resilient.
Literatur
1.
Zurück zum Zitat Di Curzio DL, Buist RJ, Del Bigio MR (2013) Reduced subventricular zone proliferation and white matter damage in juvenile ferrets with kaolin-induced hydrocephalus. Exp Neurol 248C:112–128CrossRef Di Curzio DL, Buist RJ, Del Bigio MR (2013) Reduced subventricular zone proliferation and white matter damage in juvenile ferrets with kaolin-induced hydrocephalus. Exp Neurol 248C:112–128CrossRef
2.
Zurück zum Zitat Del Bigio MR, Khan OH, da Silva LL, Juliet PA (2012) Cerebral white matter oxidation and nitrosylation in young rodents with kaolin-induced hydrocephalus. J Neuropathol Exp Neurol 71:274–288PubMedCrossRef Del Bigio MR, Khan OH, da Silva LL, Juliet PA (2012) Cerebral white matter oxidation and nitrosylation in young rodents with kaolin-induced hydrocephalus. J Neuropathol Exp Neurol 71:274–288PubMedCrossRef
3.
Zurück zum Zitat Khan OH, Enno TL, Del Bigio MR (2006) Brain damage in neonatal rats following kaolin induction of hydrocephalus. Exp Neurol 200:311–320PubMedCrossRef Khan OH, Enno TL, Del Bigio MR (2006) Brain damage in neonatal rats following kaolin induction of hydrocephalus. Exp Neurol 200:311–320PubMedCrossRef
4.
Zurück zum Zitat Del Bigio MR, Wilson MJ, Enno T (2003) Chronic hydrocephalus in rats and humans: white matter loss and behavior changes. Ann Neurol 53:337–346PubMedCrossRef Del Bigio MR, Wilson MJ, Enno T (2003) Chronic hydrocephalus in rats and humans: white matter loss and behavior changes. Ann Neurol 53:337–346PubMedCrossRef
5.
Zurück zum Zitat Cancelliere A, Mangano FT, Air EL, Jones BV, Altaye M, Rajagopal A, Holland SK, Hertzler DA 2nd, Yuan W (2013) DTI values in key white matter tracts from infancy through adolescence. Am J Neuroradiol 34:1443–1449PubMedCrossRef Cancelliere A, Mangano FT, Air EL, Jones BV, Altaye M, Rajagopal A, Holland SK, Hertzler DA 2nd, Yuan W (2013) DTI values in key white matter tracts from infancy through adolescence. Am J Neuroradiol 34:1443–1449PubMedCrossRef
6.
Zurück zum Zitat Jang SH, Choi BY, Chang CH, Jung YJ, Byun WM, Kim SH, Yeo SS (2013) The effects of hydrocephalus on the periventricular white matter in intracerebral hemorrhage: a diffuser tensor imaging study. Int J Neurosci 123:420–424PubMedCrossRef Jang SH, Choi BY, Chang CH, Jung YJ, Byun WM, Kim SH, Yeo SS (2013) The effects of hydrocephalus on the periventricular white matter in intracerebral hemorrhage: a diffuser tensor imaging study. Int J Neurosci 123:420–424PubMedCrossRef
7.
Zurück zum Zitat Nicot B, Bouzerar R, Gondry-Jouet C, Capel C, Peltier J, Fichten A, Baledent O (2013) Effect of surgery on periventricular white matter in normal pressure hydrocephalus patients: comparison of two methods of DTI analysis. Acta Radiolog 55(5):614–621CrossRef Nicot B, Bouzerar R, Gondry-Jouet C, Capel C, Peltier J, Fichten A, Baledent O (2013) Effect of surgery on periventricular white matter in normal pressure hydrocephalus patients: comparison of two methods of DTI analysis. Acta Radiolog 55(5):614–621CrossRef
8.
Zurück zum Zitat Yallampalli R, Wilde EA, Bigler ED, McCauley SR, Hanten G, Troyanskaya M, Hunter JV, Chu Z, Li X, Levin HS (2013) Acute white matter differences in the fornix following mild traumatic brain injury using diffusion tensor imaging. J Neuroimaging 23:224–227PubMedCrossRef Yallampalli R, Wilde EA, Bigler ED, McCauley SR, Hanten G, Troyanskaya M, Hunter JV, Chu Z, Li X, Levin HS (2013) Acute white matter differences in the fornix following mild traumatic brain injury using diffusion tensor imaging. J Neuroimaging 23:224–227PubMedCrossRef
9.
Zurück zum Zitat Yuan W, McAllister JPI, Mangano FT (2013) Neuroimaging of white matter abnormalities in pediatric hydrocephalus. J Pediatri Neuroradiol 2:1–10 Yuan W, McAllister JPI, Mangano FT (2013) Neuroimaging of white matter abnormalities in pediatric hydrocephalus. J Pediatri Neuroradiol 2:1–10
10.
Zurück zum Zitat Yuan W, McKinstry RC, Shimony JS, Altaye M, Powell SK, Phillips JM, Limbrick DD Jr, Holland SK, Jones BV, Rajagopal A, Simpson S, Mercer D, Mangano FT (2013) Diffusion tensor imaging properties and neurobehavioral outcomes in children with hydrocephalus. AJNR Am J Neuroradiol 34:439–445PubMedCrossRef Yuan W, McKinstry RC, Shimony JS, Altaye M, Powell SK, Phillips JM, Limbrick DD Jr, Holland SK, Jones BV, Rajagopal A, Simpson S, Mercer D, Mangano FT (2013) Diffusion tensor imaging properties and neurobehavioral outcomes in children with hydrocephalus. AJNR Am J Neuroradiol 34:439–445PubMedCrossRef
11.
Zurück zum Zitat Thompson DK, Lee KJ, Egan GF, Warfield SK, Doyle LW, Anderson PJ, Inder TE (2013) Regional white matter microstructure in very preterm infants: predictors and 7 year outcomes. Cortex 52:60–74PubMedCrossRef Thompson DK, Lee KJ, Egan GF, Warfield SK, Doyle LW, Anderson PJ, Inder TE (2013) Regional white matter microstructure in very preterm infants: predictors and 7 year outcomes. Cortex 52:60–74PubMedCrossRef
12.
Zurück zum Zitat Demura K, Mase M, Miyati T, Osawa T, Hattori M, Kasai H, Hara M, Shibamoto Y, Yamada K (2012) Changes of fractional anisotropy and apparent diffusion coefficient in patients with idiopathic normal pressure hydrocephalus. Acta Neurochir Suppl 113:29–32PubMedCrossRef Demura K, Mase M, Miyati T, Osawa T, Hattori M, Kasai H, Hara M, Shibamoto Y, Yamada K (2012) Changes of fractional anisotropy and apparent diffusion coefficient in patients with idiopathic normal pressure hydrocephalus. Acta Neurochir Suppl 113:29–32PubMedCrossRef
13.
Zurück zum Zitat Lepomaki V, Paavilainen T, Matomaki J, Hurme S, Haataja L, Lapinleimu H, Liisa LL, Komu M, Parkkola R (2012) Effect of antenatal growth and prematurity on brain white matter: diffusion tensor study. Pediatr Radiol 42:692–698PubMedCrossRef Lepomaki V, Paavilainen T, Matomaki J, Hurme S, Haataja L, Lapinleimu H, Liisa LL, Komu M, Parkkola R (2012) Effect of antenatal growth and prematurity on brain white matter: diffusion tensor study. Pediatr Radiol 42:692–698PubMedCrossRef
14.
Zurück zum Zitat Lepomaki VK, Paavilainen TP, Hurme SA, Komu ME, Parkkola RK (2012) Fractional anisotropy and mean diffusivity parameters of the brain white matter tracts in preterm infants: reproducibility of region-of-interest measurements. Pediatr Radiol 42:175–182PubMedCrossRef Lepomaki VK, Paavilainen TP, Hurme SA, Komu ME, Parkkola RK (2012) Fractional anisotropy and mean diffusivity parameters of the brain white matter tracts in preterm infants: reproducibility of region-of-interest measurements. Pediatr Radiol 42:175–182PubMedCrossRef
15.
Zurück zum Zitat Scheel M, Diekhoff T, Sprung C, Hoffmann KT (2012) Diffusion tensor imaging in hydrocephalus—findings before and after shunt surgery. Acta Neurochir (Wien) 154:1699–1706CrossRef Scheel M, Diekhoff T, Sprung C, Hoffmann KT (2012) Diffusion tensor imaging in hydrocephalus—findings before and after shunt surgery. Acta Neurochir (Wien) 154:1699–1706CrossRef
16.
Zurück zum Zitat Koyama T, Marumoto K, Domen K, Ohmura T, Miyake H (2012) Diffusion tensor imaging of idiopathic normal pressure hydrocephalus: a voxel-based fractional anisotropy study. Neurol Med Chir (Tokyo) 52:68–74CrossRef Koyama T, Marumoto K, Domen K, Ohmura T, Miyake H (2012) Diffusion tensor imaging of idiopathic normal pressure hydrocephalus: a voxel-based fractional anisotropy study. Neurol Med Chir (Tokyo) 52:68–74CrossRef
17.
Zurück zum Zitat Sun M, Yuan W, Hertzler DA, Cancelliere A, Altaye M, Mangano FT (2012) Diffusion tensor imaging findings in young children with benign external hydrocephalus differ from the normal population. Childs Nerv Syst 28:199–208PubMedCrossRef Sun M, Yuan W, Hertzler DA, Cancelliere A, Altaye M, Mangano FT (2012) Diffusion tensor imaging findings in young children with benign external hydrocephalus differ from the normal population. Childs Nerv Syst 28:199–208PubMedCrossRef
18.
Zurück zum Zitat Hattori T, Sato R, Aoki S, Yuasa T, Mizusawa H (2012) Different patterns of fornix damage in idiopathic normal pressure hydrocephalus and Alzheimer disease. AJNR Am J Neuroradiol 33:274–279PubMedCrossRef Hattori T, Sato R, Aoki S, Yuasa T, Mizusawa H (2012) Different patterns of fornix damage in idiopathic normal pressure hydrocephalus and Alzheimer disease. AJNR Am J Neuroradiol 33:274–279PubMedCrossRef
19.
Zurück zum Zitat Hattori T, Ito K, Aoki S, Yuasa T, Sato R, Ishikawa M, Sawaura H, Hori M, Mizusawa H (2012) White matter alteration in idiopathic normal pressure hydrocephalus: tract-based spatial statistics study. AJNR Am J Neuroradiol 33:97–103PubMedCrossRef Hattori T, Ito K, Aoki S, Yuasa T, Sato R, Ishikawa M, Sawaura H, Hori M, Mizusawa H (2012) White matter alteration in idiopathic normal pressure hydrocephalus: tract-based spatial statistics study. AJNR Am J Neuroradiol 33:97–103PubMedCrossRef
20.
Zurück zum Zitat Feldman HM, Lee ES, Loe IM, Yeom KW, Grill-Spector K, Luna B (2012) White matter microstructure on diffusion tensor imaging is associated with conventional magnetic resonance imaging findings and cognitive function in adolescents born preterm. Dev Med Child Neurol 54:809–814PubMedCrossRefPubMedCentral Feldman HM, Lee ES, Loe IM, Yeom KW, Grill-Spector K, Luna B (2012) White matter microstructure on diffusion tensor imaging is associated with conventional magnetic resonance imaging findings and cognitive function in adolescents born preterm. Dev Med Child Neurol 54:809–814PubMedCrossRefPubMedCentral
21.
Zurück zum Zitat Yuan W, McAllister JP 2nd, Lindquist DM, Gill N, Holland SK, Henkel D, Rajagopal A, Mangano FT (2012) Diffusion tensor imaging of white matter injury in a rat model of infantile hydrocephalus. Childs Nerv Syst 28:47–54PubMedCrossRef Yuan W, McAllister JP 2nd, Lindquist DM, Gill N, Holland SK, Henkel D, Rajagopal A, Mangano FT (2012) Diffusion tensor imaging of white matter injury in a rat model of infantile hydrocephalus. Childs Nerv Syst 28:47–54PubMedCrossRef
22.
Zurück zum Zitat McAllister JP 2nd, Cohen MI, O'Mara KA, Johnson MH (1991) Progression of experimental infantile hydrocephalus and effects of ventriculoperitoneal shunts: an analysis correlating magnetic resonance imaging with gross morphology. Neurosurgery 29:329–340PubMedCrossRef McAllister JP 2nd, Cohen MI, O'Mara KA, Johnson MH (1991) Progression of experimental infantile hydrocephalus and effects of ventriculoperitoneal shunts: an analysis correlating magnetic resonance imaging with gross morphology. Neurosurgery 29:329–340PubMedCrossRef
23.
Zurück zum Zitat Del Bigio MR (2010) Neuropathology and structural changes in hydrocephalus. Dev Disabil Res Rev 16:16–22PubMedCrossRef Del Bigio MR (2010) Neuropathology and structural changes in hydrocephalus. Dev Disabil Res Rev 16:16–22PubMedCrossRef
24.
Zurück zum Zitat Del Bigio MR (2004) Cellular damage and prevention in childhood hydrocephalus. Brain Pathol 14:317–324PubMedCrossRef Del Bigio MR (2004) Cellular damage and prevention in childhood hydrocephalus. Brain Pathol 14:317–324PubMedCrossRef
26.
Zurück zum Zitat Kou Z, Wu Z, Tong KA, Holshouser B, Benson RR, Hu J, Haacke EM (2010) The role of advanced MR imaging findings as biomarkers of traumatic brain injury. J Head Trauma Rehabil 25:267–282PubMedCrossRef Kou Z, Wu Z, Tong KA, Holshouser B, Benson RR, Hu J, Haacke EM (2010) The role of advanced MR imaging findings as biomarkers of traumatic brain injury. J Head Trauma Rehabil 25:267–282PubMedCrossRef
28.
Zurück zum Zitat Mori S, Zhang J (2006) Principles of diffusion tensor imaging and its applications to basic neuroscience research. Neuron 51:527–539PubMedCrossRef Mori S, Zhang J (2006) Principles of diffusion tensor imaging and its applications to basic neuroscience research. Neuron 51:527–539PubMedCrossRef
29.
Zurück zum Zitat Wozniak JR, Lim KO (2006) Advances in white matter imaging: a review of in vivo magnetic resonance methodologies and their applicability to the study of development and aging. Neurosci BiobehavRev 30:762–774CrossRef Wozniak JR, Lim KO (2006) Advances in white matter imaging: a review of in vivo magnetic resonance methodologies and their applicability to the study of development and aging. Neurosci BiobehavRev 30:762–774CrossRef
30.
Zurück zum Zitat Basser PJ, Jones DK (2002) Diffusion-tensor MRI: theory, experimental design and data analysis - a technical review. NMR Biomed 15:456–467PubMedCrossRef Basser PJ, Jones DK (2002) Diffusion-tensor MRI: theory, experimental design and data analysis - a technical review. NMR Biomed 15:456–467PubMedCrossRef
31.
Zurück zum Zitat Beaulieu C (2002) The basis of anisotropic water diffusion in the nervous system—a technical review. NMR Biomed 15:435–455PubMedCrossRef Beaulieu C (2002) The basis of anisotropic water diffusion in the nervous system—a technical review. NMR Biomed 15:435–455PubMedCrossRef
32.
Zurück zum Zitat Neil J, Miller J, Mukherjee P, Huppi PS (2002) Diffusion tensor imaging of normal and injured developing human brain—a technical review. NMR Biomed 15:543–552PubMedCrossRef Neil J, Miller J, Mukherjee P, Huppi PS (2002) Diffusion tensor imaging of normal and injured developing human brain—a technical review. NMR Biomed 15:543–552PubMedCrossRef
33.
34.
Zurück zum Zitat Mathur AM, Neil JJ, Inder TE (2010) Understanding brain injury and neurodevelopmental disabilities in the preterm infant: the evolving role of advanced magnetic resonance imaging. Semin Perinatol 34:57–66PubMedCrossRefPubMedCentral Mathur AM, Neil JJ, Inder TE (2010) Understanding brain injury and neurodevelopmental disabilities in the preterm infant: the evolving role of advanced magnetic resonance imaging. Semin Perinatol 34:57–66PubMedCrossRefPubMedCentral
35.
Zurück zum Zitat Suskauer SJ, Huisman TAGM (2009) Neuroimaging in pediatric traumatic brain injury: Current and future predictors of functional outcome. Develop Disabil Res Rev 15:117–123CrossRef Suskauer SJ, Huisman TAGM (2009) Neuroimaging in pediatric traumatic brain injury: Current and future predictors of functional outcome. Develop Disabil Res Rev 15:117–123CrossRef
36.
Zurück zum Zitat Bosnell R, Giorgio A, Johansen-Berg H (2008) Imaging white matter diffusion changes with development and recovery from brain injury. Develop Neurorehabil 11:174–186CrossRef Bosnell R, Giorgio A, Johansen-Berg H (2008) Imaging white matter diffusion changes with development and recovery from brain injury. Develop Neurorehabil 11:174–186CrossRef
37.
Zurück zum Zitat Sotak CH (2002) The role of diffusion tensor imaging in the evaluation of ischemic brain injury—a review. NMR Biomed 15:561–569PubMedCrossRef Sotak CH (2002) The role of diffusion tensor imaging in the evaluation of ischemic brain injury—a review. NMR Biomed 15:561–569PubMedCrossRef
38.
Zurück zum Zitat Lim KO, Helpern JA (2002) Neuropsychiatric applications of DTI—a review. NMR Biomed 15:587–593PubMedCrossRef Lim KO, Helpern JA (2002) Neuropsychiatric applications of DTI—a review. NMR Biomed 15:587–593PubMedCrossRef
39.
Zurück zum Zitat Jang SH (2011) A review of diffusion tensor imaging studies on motor recovery mechanisms in stroke patients. NeuroRehabilitation 28:345–352PubMed Jang SH (2011) A review of diffusion tensor imaging studies on motor recovery mechanisms in stroke patients. NeuroRehabilitation 28:345–352PubMed
40.
Zurück zum Zitat Williams MA, McAllister JP, Walker ML, Kranz DA, Bergsneider M, Del Bigio MR, Fleming L, Frim DM, Gwinn K, Kestle JR, Luciano MG, Madsen JR, Oster-Granite ML, Spinella G (2007) Priorities for hydrocephalus research: report from a National Institutes of Health-sponsored workshop. J Neurosurg 107:345–357PubMedCrossRef Williams MA, McAllister JP, Walker ML, Kranz DA, Bergsneider M, Del Bigio MR, Fleming L, Frim DM, Gwinn K, Kestle JR, Luciano MG, Madsen JR, Oster-Granite ML, Spinella G (2007) Priorities for hydrocephalus research: report from a National Institutes of Health-sponsored workshop. J Neurosurg 107:345–357PubMedCrossRef
41.
Zurück zum Zitat Eskandari R, Harris CA, McAllister JP 2nd (2011) Reactive astrocytosis in feline neonatal hydrocephalus: acute, chronic, and shunt-induced changes. Childs Nerv Syst 27:2067–2076PubMedCrossRef Eskandari R, Harris CA, McAllister JP 2nd (2011) Reactive astrocytosis in feline neonatal hydrocephalus: acute, chronic, and shunt-induced changes. Childs Nerv Syst 27:2067–2076PubMedCrossRef
42.
Zurück zum Zitat Eskandari R, Packer M, Burdett EC, McAllister JP 2nd (2012) Effect of delayed intermittent ventricular drainage on ventriculomegaly and neurological deficits in experimental neonatal hydrocephalus. Childs Nerv Syst 28:1849–1861PubMedCrossRef Eskandari R, Packer M, Burdett EC, McAllister JP 2nd (2012) Effect of delayed intermittent ventricular drainage on ventriculomegaly and neurological deficits in experimental neonatal hydrocephalus. Childs Nerv Syst 28:1849–1861PubMedCrossRef
43.
Zurück zum Zitat McAllister JP 2nd (2012) Pathophysiology of congenital and neonatal hydrocephalus. Semin Fetal Neonat Med 17:285–294CrossRef McAllister JP 2nd (2012) Pathophysiology of congenital and neonatal hydrocephalus. Semin Fetal Neonat Med 17:285–294CrossRef
44.
Zurück zum Zitat McAllister JP II (2011) Experimental hydrocephalus. In: Winn HR (ed) Youmans textbook of neurological surgery. Elsevier, New York, pp 2002–2008CrossRef McAllister JP II (2011) Experimental hydrocephalus. In: Winn HR (ed) Youmans textbook of neurological surgery. Elsevier, New York, pp 2002–2008CrossRef
45.
Zurück zum Zitat McAllister JP 2nd, Chovan P (1998) Neonatal hydrocephalus. Mechanisms and consequences. Neurosurg Clin N Am 9:73–93PubMed McAllister JP 2nd, Chovan P (1998) Neonatal hydrocephalus. Mechanisms and consequences. Neurosurg Clin N Am 9:73–93PubMed
46.
Zurück zum Zitat Lovely TJ, McAllister JP 2nd, Miller DW, Lamperti AA, Wolfson BJ (1989) Effects of hydrocephalus and surgical decompression on cortical norepinephrine levels in neonatal cats. Neurosurgery 24:43–52PubMedCrossRef Lovely TJ, McAllister JP 2nd, Miller DW, Lamperti AA, Wolfson BJ (1989) Effects of hydrocephalus and surgical decompression on cortical norepinephrine levels in neonatal cats. Neurosurgery 24:43–52PubMedCrossRef
47.
Zurück zum Zitat Zhang X, Li C (2013) Quantitative MRI measures in SIV-infected macaque brains. J Clin Cell Immunol Suppl 7:005 Zhang X, Li C (2013) Quantitative MRI measures in SIV-infected macaque brains. J Clin Cell Immunol Suppl 7:005
48.
Zurück zum Zitat Kwon SH, Vasung L, Ment LR, Huppi PS (2014) The role of neuroimaging in predicting neurodevelopmental outcomes of preterm neonates. Clin Perinatol 41:257–283PubMedCrossRef Kwon SH, Vasung L, Ment LR, Huppi PS (2014) The role of neuroimaging in predicting neurodevelopmental outcomes of preterm neonates. Clin Perinatol 41:257–283PubMedCrossRef
49.
Zurück zum Zitat Rajagopal A, Shimony JS, McKinstry RC, Altaye M, Maloney T, Mangano FT, Limbrick DD, Holland SK, Jones BV, Simpson S, Mercer D, Yuan W (2013) White matter microstructural abnormality in children with hydrocephalus detected by probabilistic diffusion tractography. AJNR Am J Neuroradiol 34:2379–2385PubMedCrossRef Rajagopal A, Shimony JS, McKinstry RC, Altaye M, Maloney T, Mangano FT, Limbrick DD, Holland SK, Jones BV, Simpson S, Mercer D, Yuan W (2013) White matter microstructural abnormality in children with hydrocephalus detected by probabilistic diffusion tractography. AJNR Am J Neuroradiol 34:2379–2385PubMedCrossRef
50.
Zurück zum Zitat Air EL, Yuan W, Holland SK, Jones BV, Bierbrauer K, Altaye M, Mangano FT (2010) Longitudinal comparison of pre- and postoperative diffusion tensor imaging parameters in young children with hydrocephalus. J Neurosurg Pediatr 5:385–391PubMedCrossRef Air EL, Yuan W, Holland SK, Jones BV, Bierbrauer K, Altaye M, Mangano FT (2010) Longitudinal comparison of pre- and postoperative diffusion tensor imaging parameters in young children with hydrocephalus. J Neurosurg Pediatr 5:385–391PubMedCrossRef
51.
Zurück zum Zitat Yuan W, Mangano FT, Air EL, Holland SK, Jones BV, Altaye M, Bierbrauer K (2009) Anisotropic diffusion properties in infants with hydrocephalus: a diffusion tensor imaging study. AJNR Am J Neuroradiol 30:1792–1798PubMedCrossRef Yuan W, Mangano FT, Air EL, Holland SK, Jones BV, Altaye M, Bierbrauer K (2009) Anisotropic diffusion properties in infants with hydrocephalus: a diffusion tensor imaging study. AJNR Am J Neuroradiol 30:1792–1798PubMedCrossRef
52.
Zurück zum Zitat Yuan W, Air E, Altaye M, Holland S, Jones B, Bierbrauer K, Mangano F (2009) Abnormal fractional anisotropy in hydrocephalic children: a DTI study. Cerebrospinal Fluid Res 6:S14CrossRef Yuan W, Air E, Altaye M, Holland S, Jones B, Bierbrauer K, Mangano F (2009) Abnormal fractional anisotropy in hydrocephalic children: a DTI study. Cerebrospinal Fluid Res 6:S14CrossRef
53.
Zurück zum Zitat Kriebel RM, Shah AB, McAllister JP II (1993) The microstructure of cortical neuropil before and after decompression in experimental infantile hydrocephalus. Exp Neurol 119:89–98PubMedCrossRef Kriebel RM, Shah AB, McAllister JP II (1993) The microstructure of cortical neuropil before and after decompression in experimental infantile hydrocephalus. Exp Neurol 119:89–98PubMedCrossRef
54.
Zurück zum Zitat Eskandari R, McAllister JP 2nd, Miller JM, Ding Y, Ham SD, Shearer DM, Way JS (2004) Effects of hydrocephalus and ventriculoperitoneal shunt therapy on afferent and efferent connections in the feline sensorimotor cortex. J Neurosurg 101:196–210PubMed Eskandari R, McAllister JP 2nd, Miller JM, Ding Y, Ham SD, Shearer DM, Way JS (2004) Effects of hydrocephalus and ventriculoperitoneal shunt therapy on afferent and efferent connections in the feline sensorimotor cortex. J Neurosurg 101:196–210PubMed
55.
Zurück zum Zitat Lovely TJ, Miller DW, McAllister JP 2nd (1989) A technique for placing ventriculoperitoneal shunts in a neonatal model of hydrocephalus. J Neurosci Methods 29:201–206PubMedCrossRef Lovely TJ, Miller DW, McAllister JP 2nd (1989) A technique for placing ventriculoperitoneal shunts in a neonatal model of hydrocephalus. J Neurosci Methods 29:201–206PubMedCrossRef
56.
Zurück zum Zitat Wright LC, McAllister JP 2nd, Katz SD, Miller DW, Lovely TJ, Salotto AG, Wolfson BJ (1990) Cytological and cytoarchitectural changes in the feline cerebral cortex during experimental infantile hydrocephalus. Pediatr Neurosurg 16:139–155PubMedCrossRef Wright LC, McAllister JP 2nd, Katz SD, Miller DW, Lovely TJ, Salotto AG, Wolfson BJ (1990) Cytological and cytoarchitectural changes in the feline cerebral cortex during experimental infantile hydrocephalus. Pediatr Neurosurg 16:139–155PubMedCrossRef
57.
Zurück zum Zitat Hochwald GM, Sahar A, Sadik AR, Ransohoff J (1969) Cerebrospinal fluid production and histological observations in animals with experimental obstructive hydrocephalus. Exp Neurol 25:190–199PubMedCrossRef Hochwald GM, Sahar A, Sadik AR, Ransohoff J (1969) Cerebrospinal fluid production and histological observations in animals with experimental obstructive hydrocephalus. Exp Neurol 25:190–199PubMedCrossRef
58.
Zurück zum Zitat Sahar A, Hochwald GM, Sadik AR, Ransohoff J (1969) Cerebrospinal fluid absorption in animals with experimental obstructive hydrocephalus. Arch Neurol 21:638–644PubMedCrossRef Sahar A, Hochwald GM, Sadik AR, Ransohoff J (1969) Cerebrospinal fluid absorption in animals with experimental obstructive hydrocephalus. Arch Neurol 21:638–644PubMedCrossRef
59.
Zurück zum Zitat Chumas PD, Drake JM, Del Bigio MR, da Silva MC, Tuor UI (1994) Anaerobic glycolysis preceding white-matter destruction in experimental neonatal hydrocephalus. J Neurosurg 80:491–501PubMedCrossRef Chumas PD, Drake JM, Del Bigio MR, da Silva MC, Tuor UI (1994) Anaerobic glycolysis preceding white-matter destruction in experimental neonatal hydrocephalus. J Neurosurg 80:491–501PubMedCrossRef
60.
Zurück zum Zitat Heemskerk AM, Leemans A, Plaisier A, Pieterman K, Lequin MH, Dudink J (2013) Acquisition guidelines and quality assessment tools for analyzing neonatal diffusion tensor MRI data. AJNR Am J Neuroradiol 34:1496–1505PubMedCrossRef Heemskerk AM, Leemans A, Plaisier A, Pieterman K, Lequin MH, Dudink J (2013) Acquisition guidelines and quality assessment tools for analyzing neonatal diffusion tensor MRI data. AJNR Am J Neuroradiol 34:1496–1505PubMedCrossRef
61.
Zurück zum Zitat Le Bihan D, Mangin JF, Poupon C, Clark CA, Pappata S, Molko N, Chabriat H (2001) Diffusion tensor imaging-concepts and applications. J Magn Res Imag 13:534–546CrossRef Le Bihan D, Mangin JF, Poupon C, Clark CA, Pappata S, Molko N, Chabriat H (2001) Diffusion tensor imaging-concepts and applications. J Magn Res Imag 13:534–546CrossRef
62.
Zurück zum Zitat Ciumas C, Saignavongs M, Ilski F, Herbillon V, Laurent A, Lothe A, Heckemann RA, de Bellescize J, Panagiotakaki E, Hannoun S, Marinier DS, Montavont A, Ostrowsky-Coste K, Bedoin N, Ryvlin P (2014) White matter development in children with benign childhood epilepsy with centro-temporal spikes. 137(Pt 4):1095–1106 Ciumas C, Saignavongs M, Ilski F, Herbillon V, Laurent A, Lothe A, Heckemann RA, de Bellescize J, Panagiotakaki E, Hannoun S, Marinier DS, Montavont A, Ostrowsky-Coste K, Bedoin N, Ryvlin P (2014) White matter development in children with benign childhood epilepsy with centro-temporal spikes. 137(Pt 4):1095–1106
63.
Zurück zum Zitat Teipel SJ, Walter M, Likitjaroen Y, Schonknecht P, Gruber O (2014) Diffusion tensor imaging in Alzheimer's disease and affective disorders. Eur Arch Psychiatry Clin Neurosci (in press) Teipel SJ, Walter M, Likitjaroen Y, Schonknecht P, Gruber O (2014) Diffusion tensor imaging in Alzheimer's disease and affective disorders. Eur Arch Psychiatry Clin Neurosci (in press)
65.
Zurück zum Zitat Langevin LM, Macmaster FP, Crawford S, Lebel C, Dewey D (2014) Common white matter microstructure alterations in pediatric motor and attention disorders. J Pediatr 164(5):1157–1164PubMedCrossRef Langevin LM, Macmaster FP, Crawford S, Lebel C, Dewey D (2014) Common white matter microstructure alterations in pediatric motor and attention disorders. J Pediatr 164(5):1157–1164PubMedCrossRef
66.
Zurück zum Zitat Mahoney CJ, Ridgway GR, Malone IB, Downey LE, Beck J, Kinnunen KM, Schmitz N, Golden HL, Rohrer JD, Schott JM, Rossor MN, Ourselin S, Mead S, Fox NC, Warren JD (2014) Profiles of white matter tract pathology in frontotemporal dementia. Hum Brain Mapp. doi:10.1002/hbm.22468 PubMed Mahoney CJ, Ridgway GR, Malone IB, Downey LE, Beck J, Kinnunen KM, Schmitz N, Golden HL, Rohrer JD, Schott JM, Rossor MN, Ourselin S, Mead S, Fox NC, Warren JD (2014) Profiles of white matter tract pathology in frontotemporal dementia. Hum Brain Mapp. doi:10.​1002/​hbm.​22468 PubMed
67.
Zurück zum Zitat Kaur S, Powell S, He L, Pierson CR, Parikh NA (2014) Reliability and repeatability of quantitative tractography methods for mapping structural white matter connectivity in preterm and term infants at term-equivalent age. PLoS One 9:e85807PubMedCrossRefPubMedCentral Kaur S, Powell S, He L, Pierson CR, Parikh NA (2014) Reliability and repeatability of quantitative tractography methods for mapping structural white matter connectivity in preterm and term infants at term-equivalent age. PLoS One 9:e85807PubMedCrossRefPubMedCentral
68.
Zurück zum Zitat Song YJ, Korgaonkar MS, Armstrong LV, Eagles S, Williams LM, Grieve SM (2014) Tractography of the brainstem in major depressive disorder using diffusion tensor imaging. PLoS One 9:e84825PubMedCrossRefPubMedCentral Song YJ, Korgaonkar MS, Armstrong LV, Eagles S, Williams LM, Grieve SM (2014) Tractography of the brainstem in major depressive disorder using diffusion tensor imaging. PLoS One 9:e84825PubMedCrossRefPubMedCentral
69.
Zurück zum Zitat Zhang X, Li B, Shan B (2014) Age-related white matter degradation rule of normal human brain: the evidence from diffusion tensor magnetic resonance imaging. Chin Med J 127:532–537PubMed Zhang X, Li B, Shan B (2014) Age-related white matter degradation rule of normal human brain: the evidence from diffusion tensor magnetic resonance imaging. Chin Med J 127:532–537PubMed
70.
Zurück zum Zitat George E, Heier L, Kovanlikaya I, Greenfield J (2014) Diffusion tensor imaging of pyramidal tract reorganization after pediatric stroke. Childs Nerv Syst 30(6):1135–1139PubMedCrossRef George E, Heier L, Kovanlikaya I, Greenfield J (2014) Diffusion tensor imaging of pyramidal tract reorganization after pediatric stroke. Childs Nerv Syst 30(6):1135–1139PubMedCrossRef
71.
Zurück zum Zitat Calabrese E, Du F, Garman RH, Johnson GA, Riccio C, Tong LC, Long JB (2014) Diffusion tensor imaging reveals white matter injury in a rat model of repetitive blast-induced traumatic brain injury. J Neurotrauma 31(10):938–950PubMedCrossRef Calabrese E, Du F, Garman RH, Johnson GA, Riccio C, Tong LC, Long JB (2014) Diffusion tensor imaging reveals white matter injury in a rat model of repetitive blast-induced traumatic brain injury. J Neurotrauma 31(10):938–950PubMedCrossRef
72.
Zurück zum Zitat Sun SW, Liang HF, Mei J, Xu D, Shi WX (2014) In vivo diffusion tensor imaging of amyloid-beta-induced white matter damage in mice. J Alzheimers Dis 38:93–101PubMed Sun SW, Liang HF, Mei J, Xu D, Shi WX (2014) In vivo diffusion tensor imaging of amyloid-beta-induced white matter damage in mice. J Alzheimers Dis 38:93–101PubMed
73.
Zurück zum Zitat Teipel SJ, Grothe M, Lista S, Toschi N, Garaci FG, Hampel H (2013) Relevance of magnetic resonance imaging for early detection and diagnosis of Alzheimer disease. Med Clin North Am 97:399–424PubMedCrossRef Teipel SJ, Grothe M, Lista S, Toschi N, Garaci FG, Hampel H (2013) Relevance of magnetic resonance imaging for early detection and diagnosis of Alzheimer disease. Med Clin North Am 97:399–424PubMedCrossRef
74.
Zurück zum Zitat Jurcoane A, Keil F, Szelenyi A, Pfeilschifter W, Singer OC, Hattingen E (2014) Directional diffusion of corticospinal tract supports therapy decisions in idiopathic normal-pressure hydrocephalus. Neuroradiology 56:5–13PubMedCrossRef Jurcoane A, Keil F, Szelenyi A, Pfeilschifter W, Singer OC, Hattingen E (2014) Directional diffusion of corticospinal tract supports therapy decisions in idiopathic normal-pressure hydrocephalus. Neuroradiology 56:5–13PubMedCrossRef
75.
Zurück zum Zitat Ivkovic M, Liu B, Ahmed F, Moore D, Huang C, Raj A, Kovanlikaya I, Heier L, Relkin N (2013) Differential diagnosis of normal pressure hydrocephalus by MRI mean diffusivity histogram analysis. AJNR Am J Neuroradiol 34:1168–1174PubMedCrossRef Ivkovic M, Liu B, Ahmed F, Moore D, Huang C, Raj A, Kovanlikaya I, Heier L, Relkin N (2013) Differential diagnosis of normal pressure hydrocephalus by MRI mean diffusivity histogram analysis. AJNR Am J Neuroradiol 34:1168–1174PubMedCrossRef
76.
Zurück zum Zitat Koyama T, Marumoto K, Domen K, Miyake H (2013) White matter characteristics of idiopathic normal pressure hydrocephalus: a diffusion tensor tract-based spatial statistic study. Neurol Med Chir (Tokyo) 53:601–608CrossRef Koyama T, Marumoto K, Domen K, Miyake H (2013) White matter characteristics of idiopathic normal pressure hydrocephalus: a diffusion tensor tract-based spatial statistic study. Neurol Med Chir (Tokyo) 53:601–608CrossRef
77.
Zurück zum Zitat Marumoto K, Koyama T, Hosomi M, Kodama N, Miyake H, Domen K (2012) Diffusion tensor imaging in elderly patients with idiopathic normal pressure hydrocephalus or Parkinson's disease: diagnosis of gait abnormalities. Fluids Barriers CNS 9:20PubMedCrossRefPubMedCentral Marumoto K, Koyama T, Hosomi M, Kodama N, Miyake H, Domen K (2012) Diffusion tensor imaging in elderly patients with idiopathic normal pressure hydrocephalus or Parkinson's disease: diagnosis of gait abnormalities. Fluids Barriers CNS 9:20PubMedCrossRefPubMedCentral
78.
Zurück zum Zitat Kanno S, Abe N, Saito M, Takagi M, Nishio Y, Hayashi A, Uchiyama M, Hanaki R, Kikuchi H, Hiraoka K, Yamasaki H, Iizuka O, Takeda A, Itoyama Y, Takahashi S, Mori E (2011) White matter involvement in idiopathic normal pressure hydrocephalus: a voxel-based diffusion tensor imaging study. J Neurol 258(11):1949–1957PubMedCrossRef Kanno S, Abe N, Saito M, Takagi M, Nishio Y, Hayashi A, Uchiyama M, Hanaki R, Kikuchi H, Hiraoka K, Yamasaki H, Iizuka O, Takeda A, Itoyama Y, Takahashi S, Mori E (2011) White matter involvement in idiopathic normal pressure hydrocephalus: a voxel-based diffusion tensor imaging study. J Neurol 258(11):1949–1957PubMedCrossRef
79.
Zurück zum Zitat Kim MJ, Seo SW, Lee KM, Kim ST, Lee JI, Nam DH, Na DL (2011) Differential diagnosis of idiopathic normal pressure hydrocephalus from other dementias using diffusion tensor imaging. AJNR AmJ Neuroradiol 32:1496–1503CrossRef Kim MJ, Seo SW, Lee KM, Kim ST, Lee JI, Nam DH, Na DL (2011) Differential diagnosis of idiopathic normal pressure hydrocephalus from other dementias using diffusion tensor imaging. AJNR AmJ Neuroradiol 32:1496–1503CrossRef
80.
Zurück zum Zitat Hattori T, Yuasa T, Aoki S, Sato R, Sawaura H, Mori T, Mizusawa H (2011) Altered microstructure in corticospinal tract in idiopathic normal pressure hydrocephalus: comparison with Alzheimer disease and Parkinson disease with dementia. AJNR Am J Neuroradiol 32:1681–1687PubMedCrossRef Hattori T, Yuasa T, Aoki S, Sato R, Sawaura H, Mori T, Mizusawa H (2011) Altered microstructure in corticospinal tract in idiopathic normal pressure hydrocephalus: comparison with Alzheimer disease and Parkinson disease with dementia. AJNR Am J Neuroradiol 32:1681–1687PubMedCrossRef
81.
Zurück zum Zitat Hattingen E, Jurcoane A, Melber J, Blasel S, Zanella FE, Neumann-Haefelin T, Singer OC (2010) Diffusion tensor imaging in patients with adult chronic idiopathic hydrocephalus. Neurosurgery 66:917–924PubMedCrossRef Hattingen E, Jurcoane A, Melber J, Blasel S, Zanella FE, Neumann-Haefelin T, Singer OC (2010) Diffusion tensor imaging in patients with adult chronic idiopathic hydrocephalus. Neurosurgery 66:917–924PubMedCrossRef
82.
Zurück zum Zitat Osuka S, Matsushita A, Yamamoto T, Saotome K, Isobe T, Nagatomo Y, Masumoto T, Komatsu Y, Ishikawa E, Matsumura A (2010) Evaluation of ventriculomegaly using diffusion tensor imaging: correlations with chronic hydrocephalus and atrophy. J Neurosurg 112:832–839PubMedCrossRef Osuka S, Matsushita A, Yamamoto T, Saotome K, Isobe T, Nagatomo Y, Masumoto T, Komatsu Y, Ishikawa E, Matsumura A (2010) Evaluation of ventriculomegaly using diffusion tensor imaging: correlations with chronic hydrocephalus and atrophy. J Neurosurg 112:832–839PubMedCrossRef
83.
Zurück zum Zitat Keong NC, DeVito E, Harding S, Gillard JH, Pickard JD (2008) Modelling normal pressure hydrocephalus using diffusion tensor imaging. Clin Neurol Neurosurg 110:S4CrossRef Keong NC, DeVito E, Harding S, Gillard JH, Pickard JD (2008) Modelling normal pressure hydrocephalus using diffusion tensor imaging. Clin Neurol Neurosurg 110:S4CrossRef
84.
Zurück zum Zitat Castillo EM, Fletcher JM, Li Z, Hoskison MM, Hasan KM, Passaro A, Papanicolaou AC (2009) Transcallosal connectivity and cortical rhythms: findings in children with spina bifida. NeuroReport 20:1188–1192PubMedCrossRefPubMedCentral Castillo EM, Fletcher JM, Li Z, Hoskison MM, Hasan KM, Passaro A, Papanicolaou AC (2009) Transcallosal connectivity and cortical rhythms: findings in children with spina bifida. NeuroReport 20:1188–1192PubMedCrossRefPubMedCentral
85.
Zurück zum Zitat Hasan KM, Sankar A, Halphen C, Kramer LA, Ewing-Cobbs L, Dennis M, Fletcher JM (2008) Quantitative diffusion tensor imaging and intellectual outcomes in spina bifida: laboratory investigation. J Neurosurg Pediatr 2:75–82PubMedCrossRefPubMedCentral Hasan KM, Sankar A, Halphen C, Kramer LA, Ewing-Cobbs L, Dennis M, Fletcher JM (2008) Quantitative diffusion tensor imaging and intellectual outcomes in spina bifida: laboratory investigation. J Neurosurg Pediatr 2:75–82PubMedCrossRefPubMedCentral
86.
Zurück zum Zitat Yuan W, Deren KE, McAllister JP 2nd, Holland SK, Lindquist DM, Cancelliere A, Mason M, Shereen A, Hertzler DA, Altaye M, Mangano FT (2010) Diffusion tensor imaging correlates with cytopathology in a rat model of neonatal hydrocephalus. Cerebrospinal Fluid Res 7:19PubMedCrossRefPubMedCentral Yuan W, Deren KE, McAllister JP 2nd, Holland SK, Lindquist DM, Cancelliere A, Mason M, Shereen A, Hertzler DA, Altaye M, Mangano FT (2010) Diffusion tensor imaging correlates with cytopathology in a rat model of neonatal hydrocephalus. Cerebrospinal Fluid Res 7:19PubMedCrossRefPubMedCentral
87.
Zurück zum Zitat Griffith JL, Shimony JS, Cousins SA, Rees SE, McCurnin DC, Inder TE, Neil JJ (2012) MR imaging correlates of white-matter pathology in a preterm baboon model. Pediatr Res 71:185–191PubMedCrossRefPubMedCentral Griffith JL, Shimony JS, Cousins SA, Rees SE, McCurnin DC, Inder TE, Neil JJ (2012) MR imaging correlates of white-matter pathology in a preterm baboon model. Pediatr Res 71:185–191PubMedCrossRefPubMedCentral
88.
Zurück zum Zitat Budde MD, Janes L, Gold E, Turtzo LC, Frank JA (2011) The contribution of gliosis to diffusion tensor anisotropy and tractography following traumatic brain injury: validation in the rat using Fourier analysis of stained tissue sections. Brain 134:2248–2260PubMedCrossRefPubMedCentral Budde MD, Janes L, Gold E, Turtzo LC, Frank JA (2011) The contribution of gliosis to diffusion tensor anisotropy and tractography following traumatic brain injury: validation in the rat using Fourier analysis of stained tissue sections. Brain 134:2248–2260PubMedCrossRefPubMedCentral
89.
Zurück zum Zitat Xie M, Tobin JE, Budde MD, Chen CI, Trinkaus K, Cross AH, McDaniel DP, Song SK, Armstrong RC (2010) Rostrocaudal analysis of corpus callosum demyelination and axon damage across disease stages refines diffusion tensor imaging correlations with pathological features. J Neuropathol ExpNeurol 69:704–716CrossRef Xie M, Tobin JE, Budde MD, Chen CI, Trinkaus K, Cross AH, McDaniel DP, Song SK, Armstrong RC (2010) Rostrocaudal analysis of corpus callosum demyelination and axon damage across disease stages refines diffusion tensor imaging correlations with pathological features. J Neuropathol ExpNeurol 69:704–716CrossRef
90.
Zurück zum Zitat Klawiter EC, Schmidt RE, Trinkaus K, Liang HF, Budde MD, Naismith RT, Song SK, Cross AH, Benzinger TL (2011) Radial diffusivity predicts demyelination in ex vivo multiple sclerosis spinal cords. Neuroimage 55:1454–1460PubMedCrossRefPubMedCentral Klawiter EC, Schmidt RE, Trinkaus K, Liang HF, Budde MD, Naismith RT, Song SK, Cross AH, Benzinger TL (2011) Radial diffusivity predicts demyelination in ex vivo multiple sclerosis spinal cords. Neuroimage 55:1454–1460PubMedCrossRefPubMedCentral
91.
Zurück zum Zitat Budde MD, Frank JA (2010) Neurite beading is sufficient to decrease the apparent diffusion coefficient after ischemic stroke. ProcNatlAcadSci USA 107:14472–14477CrossRef Budde MD, Frank JA (2010) Neurite beading is sufficient to decrease the apparent diffusion coefficient after ischemic stroke. ProcNatlAcadSci USA 107:14472–14477CrossRef
Metadaten
Titel
Differential vulnerability of white matter structures to experimental infantile hydrocephalus detected by diffusion tensor imaging
verfasst von
Ramin Eskandari
Osama Abdullah
Cameron Mason
Kelley E. Lloyd
Amanda N. Oeschle
James P. McAllister II
Publikationsdatum
01.10.2014
Verlag
Springer Berlin Heidelberg
Erschienen in
Child's Nervous System / Ausgabe 10/2014
Print ISSN: 0256-7040
Elektronische ISSN: 1433-0350
DOI
https://doi.org/10.1007/s00381-014-2500-x

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